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信号放大可逆交换(SABRE):从发现到诊断。

Signal Amplification by Reversible Exchange (SABRE): From Discovery to Diagnosis.

机构信息

Centre of Hyperpolarisation in Magnetic Resonance, Department of Chemistry, University of York, Heslington, YO10 5DD, UK.

出版信息

Angew Chem Int Ed Engl. 2018 Jun 4;57(23):6742-6753. doi: 10.1002/anie.201710406. Epub 2018 Apr 27.

Abstract

Signal amplification by reversible exchange (SABRE) turns typically weak magnetic resonance responses into strong signals making previously impractical measurements possible. This technique has gained significant popularity because of its speed and simplicity. This Minireview tracks the development of SABRE from the initial hyperpolarization of pyridine in 2009 to the point in which 50 % H polarization levels have been achieved in a di-deuterio-nicotinate, a key step in the pathway to potential clinical use. Simple routes to highly efficient N hyperpolarization and the creation of hyperpolarized long-lived magnetic states are illustrated. To conclude, we describe how the recently reported SABRE-RELAY approach offers a route for parahydrogen to hyperpolarize a much wider array of molecular scaffolds, such as amides, alcohols, carboxylic acids, and phosphates, than was previously thought possible. We predict that collectively these developments ensure that SABRE will significantly impact on both chemical analysis and the diagnosis of disease in the future.

摘要

信号放大可逆交换(SABRE)将通常较弱的磁共振响应转化为强信号,使以前不切实际的测量成为可能。由于其速度和简单性,该技术已变得非常流行。这篇综述从 2009 年吡啶的最初超极化跟踪 SABRE 的发展,到在二氘烟碱酸盐中实现 50%氢极化的水平,这是潜在临床应用的关键步骤。本文展示了通往高效 N 超极化的简单途径和超极化长寿命磁态的创建。最后,我们描述了最近报道的 SABRE-RELAY 方法如何为 para 氢提供一种途径,使比以前认为可能的更广泛的分子支架(如酰胺、醇、羧酸和磷酸盐)得到超极化。我们预测,这些发展将共同确保 SABRE 在未来的化学分析和疾病诊断中产生重大影响。

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